• Title of article

    Geometric distortion in clinical MRI systems: Part I: evaluation using a 3D phantom

  • Author/Authors

    Wang، نويسنده , , Deming and Strugnell، نويسنده , , Wendy and Cowin، نويسنده , , Gary and Doddrell، نويسنده , , David M. and Slaughter، نويسنده , , Richard، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2004
  • Pages
    11
  • From page
    1211
  • To page
    1221
  • Abstract
    Recently, a 3D phantom that can provide a comprehensive and accurate measurement of the geometric distortion in MRI has been developed. Using this phantom, a full assessment of the geometric distortion in a number of clinical MRI systems (GE and Siemens) has been carried out and detailed results are presented in this paper. As expected, the main source of geometric distortion in modern superconducting MRI systems arises from the gradient field nonlinearity. Significantly large distortions with maximum absolute geometric errors ranged between 10 and 25 mm within a volume of 240×240×240 mm3 were observed when imaging with the new generation of gradient systems that employs shorter coils. By comparison, the geometric distortion was much less in the older-generation gradient systems. With the vendorʹs correction method, the geometric distortion measured was significantly reduced but only within the plane in which these 2D correction methods were applied. Distortion along the axis normal to the plane was, as expected, virtually unchanged. Two-dimensional correction methods are a convenient approach and in principle they are the only methods that can be applied to correct geometric distortion in a single slice or in multiple noncontiguous slices. However, these methods only provide an incomplete solution to the problem and their value can be significantly reduced if the distortion along the normal of the correction plane is not small.
  • Keywords
    3D phantom , MRI , Vendorיs correction method , comprehensive assessment , geometric distortion
  • Journal title
    Magnetic Resonance Imaging
  • Serial Year
    2004
  • Journal title
    Magnetic Resonance Imaging
  • Record number

    1832033